Packaging equipment for production and processing of graphics cards
By designing the packaging stage, film roll assembly, film pressing assembly, and collection assembly, the problem of film displacement during graphics card packaging was solved, thereby improving the stability of the film and packaging quality, and increasing production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN JINTAIYUAN TECH CO LTD
- Filing Date
- 2025-05-09
- Publication Date
- 2026-04-21
AI Technical Summary
In the current graphics card packaging process, the packaging film is prone to displacement, resulting in inaccurate packaging and low packaging quality.
A packaging device for graphics card manufacturing and processing was designed, including a packaging stage, a packaging position, a film winding assembly, a film pressing assembly, and a collection assembly. The stability of the packaging film is ensured by the cooperation of the film winding roller and the unwinding roller. The design of the film pressing stage and the film pressing sheet prevents the graphics card from moving or misaligning during the packaging process. At the same time, a tension roller is set to adjust the tension of the packaging film to ensure the packaging quality.
This improved the stability and quality of the encapsulation film, reduced film movement, and ensured improved encapsulation accuracy and production efficiency.
Smart Images

Figure CN224146310U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of graphics card manufacturing and processing technology, and more specifically, to a packaging device for graphics card manufacturing and processing. Background Technology
[0002] Graphics card packaging refers to the packaging technology commonly used for graphics memory chips. Packaging is the process of encapsulating the graphics memory chip to prevent it from coming into contact with the outside world and to prevent damage to the chip. Impurities and harmful gases in the air, and even water vapor, can corrode the delicate circuits on the chip, thereby causing a decline in electrical performance.
[0003] The prior art references Chinese Patent No. CN221727092U, which discloses a graphics card packaging device, including an operating table with a support plate on top, a first motor on the outer surface of the support plate, an output shaft of the first motor fixedly connected to a packaging film roll via a coupling, a hydraulic rod on the outer surface of the support plate, an extrusion box fixedly connected to the output shaft of the hydraulic rod, a knife set at the bottom of the extrusion box, a processing box at the top center of the operating table, and a limiting groove opened in the inner side wall of the operating table. A second motor is provided on the outer surface of the processing box, a lead screw fixedly connected to the output shaft of the second motor via a coupling, a connecting block slidably connected inside the limiting groove, and a push plate on the outer surface of the connecting block.
[0004] Regarding the aforementioned existing technology, during the graphics card packaging process, the graphics card is placed inside the processing box, and the first motor is started to drive the packaging film to rotate, causing the packaging film to pull out the outer packaging film, thereby covering the top of the processing box. At the same time, the hydraulic rod is activated, causing the hydraulic rod to push the extrusion box and the blade assembly to slide, covering and sealing the packaging film. Throughout the process, the free end of the packaging film roll lacks a stable connection, which can easily cause the packaging film to shift, resulting in inaccurate packaging and low packaging quality. Utility Model Content
[0005] The technical problem to be solved by this utility model is that the encapsulation film is prone to displacement during the graphics card packaging process, resulting in inaccurate packaging. In view of the above-mentioned defects of the prior art, a packaging device for graphics card production and processing is provided.
[0006] The technical solution adopted by this utility model to solve its technical problem is:
[0007] A packaging device for graphics card manufacturing includes a packaging stage, a packaging position, and a film winding assembly. The packaging position is disposed on the surface of the packaging stage. The film winding assembly includes a film take-up roller and a film unwind roller, which are respectively disposed on both sides of the packaging stage. The film on the film take-up roller has two layers. A film separating roller is disposed on the side of the film take-up roller near the packaging stage, which is used to separate the two layers of film. One layer of film is located above the packaging stage, and the other layer is attached to the surface of the packaging stage. A film pressing assembly is disposed on the packaging stage corresponding to the packaging position, which is used to press down the film to seal the graphics card.
[0008] By adopting the above technical solution, the packaging stage, as the foundation of the entire equipment, provides stable support for the packaging position, which is responsible for placing the graphics card and ensuring that the graphics card maintains the correct position during the packaging process. The packaging film unwinding roller is responsible for releasing the packaging film, and the packaging film take-up roller is responsible for collecting the waste film after the packaging operation. The packaging film take-up roller can traction the packaging film and also collect the waste film, thereby making the packaging film more stable during the packaging process and reducing the movement of the packaging film.
[0009] Preferably, the film pressing assembly includes a film pressing platform with a recessed surface and a film pressing sheet on the side of the film pressing platform. The film pressing sheet is used to press and cut the encapsulation film, and the film pressing platform is slidably connected to the encapsulation platform in the vertical direction.
[0010] By adopting the above technical solution, once the graphics card is placed in the packaging position, the lamination assembly begins to work. The lamination stage first positions the graphics card, and then the lamination sheet presses down to adhere the packaging film and fascia to the graphics card. The recessed design of the lamination stage ensures that the graphics card remains stable during the packaging process, preventing movement or misalignment. The lamination sheet is used to press down the packaging film, encapsulating the graphics card within the film.
[0011] Preferably, a support rod is slidably connected to the side wall of the packaging platform near the packaging film take-up roller, and a tension roller is vertically connected to the support rod. The tension roller is arranged parallel to the packaging film take-up roller, and the side of the tension roller abuts against the packaging film.
[0012] By adopting the above technical solution, the support rod provides stable support for the tension roller and allows it to move up and down along the support rod. The tension roller is responsible for adjusting the tension of the encapsulation film, ensuring that the encapsulation film maintains appropriate tension during transmission.
[0013] Preferably, the end of the tensioning roller is rotatably connected to a sliding block, and the support rod is provided with a slide rail in the vertical direction to slide with the slider; the slider is threaded with a limit rod, the end of which abuts against the side wall of the slide rail and is used to limit the position of the slider.
[0014] By adopting the above technical solution, the slider cooperates with the slide rail on the support rod, and the position of the slider is fixed by the limiting rod, thereby fixing the height of the tension roller, so as to adjust the tension of the sealing film according to the actual situation.
[0015] Preferably, the collection component is used to collect the packaged graphics card. The collection component includes a collection box located below the packaging platform. The packaging platform has a discharge chute corresponding to the collection box. A telescopic cover is slidably connected to the inner wall of the discharge chute. The telescopic cover is used to cover the discharge chute. A telescopic rod is provided on the side of the telescopic cover, and the telescopic rod is used to drive the telescopic cover to slide.
[0016] Preferably, a guide channel is provided at the opening of the discharge trough, and the guide channel is connected to the collection box.
[0017] By adopting the above technical solution, after the packaging is completed, the telescopic cover opens the discharge slot, and the graphics card slides into the collection box along the guide channel to ensure that the graphics card can fall into the collection box smoothly and safely. The collection box, as the storage container for the packaged graphics card, is located below the packaging stage. The telescopic cover is driven by a telescopic rod to cover or open the discharge slot and control the flow of the graphics card. The design of the guide channel ensures that the packaged graphics card can fall smoothly from the packaging stage into the collection box, avoiding damage or scattering of the graphics card during the collection process.
[0018] Preferably, the packaging platform is further provided with a waste recycling component, which is used to collect packaging waste after film pressing. A suction component is provided on the packaging platform corresponding to the packaging position, and a suction groove is opened on the packaging position corresponding to the suction component. A collection box is connected to the suction component, and the collection box is used to collect packaging waste.
[0019] By adopting the above technical solution, the suction component works continuously during the packaging process, sucking up waste material near the packaging position through the suction trough. The waste material is sucked into the suction component and then sent to the collection box for storage.
[0020] Preferably, the packaging platform is provided with multiple packaging positions, and multiple film pressing components are provided corresponding to the multiple packaging positions.
[0021] By adopting the above technical solution, multiple graphics cards can be packaged simultaneously, greatly improving production efficiency. Each packaging position and its corresponding lamination assembly work independently without interference. Once one packaging position is completed, the work on the next packaging position can begin immediately.
[0022] The beneficial effects of this utility model are as follows:
[0023] 1. This application sets up a film take-up roller and a film unwind roller for the encapsulation film. The encapsulation table serves as the foundation of the entire equipment, providing stable support for the encapsulation position, which is responsible for placing the graphics card and ensuring that the graphics card maintains the correct position during the encapsulation process. The film unwind roller is responsible for releasing the encapsulation film, and the film take-up roller is responsible for collecting the waste film after the encapsulation operation. The film take-up roller can traction the encapsulation film and also collect the waste film, thereby making the encapsulation film more stable during the encapsulation process and reducing the movement of the encapsulation film.
[0024] 2. This application utilizes a lamination stage. Once the graphics card is positioned in the encapsulation area, the lamination assembly begins operation. The lamination stage first positions the graphics card, then the lamination sheet presses down to adhere the encapsulation film and fascia to the graphics card. The recessed design of the lamination stage ensures the graphics card remains stable during the encapsulation process, preventing movement or misalignment. The lamination sheet is used to press down the encapsulation film, encapsulating the graphics card within the film.
[0025] 3. This application incorporates a tension roller, with a support rod providing stable support and allowing it to move up and down along the support rod. The tension roller is responsible for adjusting the tension of the encapsulation film, ensuring that the encapsulation film maintains appropriate tension during transport. The slider cooperates with the slide rail on the support rod, and the position of the slider is fixed by a limiting rod, thereby fixing the height of the tension roller to adjust the tension of the encapsulation film according to actual conditions. Attached Figure Description
[0026] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the present invention will be further described below in conjunction with the accompanying drawings and embodiments. The drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0027] Figure 1 This is a schematic diagram of the overall structure of the packaging equipment for graphics card manufacturing and processing according to an embodiment of this application.
[0028] Figure 2 This is a schematic diagram of the pressing table in an embodiment of this application.
[0029] Explanation of reference numerals in the attached drawings: 1. Encapsulation platform; 2. Encapsulation position; 3. Film roll assembly; 31. Encapsulation film take-up roller; 32. Encapsulation film unwind roller; 33. Film separating roller; 34. Tensioning roller; 35. Support rod; 36. Sliding block; 37. Slide rail; 38. Limiting rod; 4. Film pressing assembly; 41. Film pressing platform; 42. Film pressing sheet; 5. Collection assembly; 51. Collection box; 52. Discharge chute; 53. Telescopic cover plate; 54. Telescopic rod; 55. Guide channel; 6. Waste recycling assembly; 61. Suction component; 62. Suction trough; 63. Collection trough; 7. Encapsulation film. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, a clear and complete description will be provided below in conjunction with the technical solutions in the embodiments of this utility model. Obviously, the described embodiments are some, but not all, of the embodiments of this utility model. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0031] The preferred embodiment of this utility model is as follows: Figure 1 and Figure 2 As shown, a packaging device for graphics card manufacturing includes a packaging platform 1, a packaging position 2, and a film winding assembly 3. The packaging position 2 is disposed on the surface of the packaging platform 1. The film winding assembly 3 includes a packaging film 7 take-up roller 31 and a packaging film 7 unwind roller 32, which are respectively disposed on both sides of the packaging platform 1. The packaging film 7 on the packaging film 7 take-up roller 31 has two layers. A film separating roller 33 is disposed on the side of the packaging film 7 take-up roller 31 near the packaging platform 1. The film separating roller 33 is used to separate the two layers of packaging film 7. One layer of packaging film 7 is located above the packaging platform 1, and the other layer is disposed against the surface of the packaging platform 1. A film pressing assembly 4 is disposed on the packaging platform 1 corresponding to the packaging position 2. The film pressing assembly 4 is used to press down the packaging film 7 to seal the graphics card.
[0032] The packaging stage 1 serves as the foundation of the entire equipment, providing stable support for the packaging position 2. The packaging position 2 is responsible for placing the graphics card and ensuring that the graphics card maintains the correct position during the packaging process. The unwinding roller 32 of the packaging film 7 is responsible for releasing the packaging film 7, and the rewinding roller 31 of the packaging film 7 is responsible for collecting the waste film after the packaging operation. The rewinding roller 31 of the packaging film 7 can traction the packaging film 7 and also collect the waste film, thereby making the packaging film 7 more stable during the packaging process and reducing the movement of the packaging film 7.
[0033] The film pressing assembly 4 includes a film pressing platform 41 with a recessed surface and a film pressing sheet 42 on the side of the film pressing platform 41. The film pressing sheet 42 is used to press and cut the encapsulation film 7. The film pressing platform 41 is slidably connected to the encapsulation platform 1 in the vertical direction. As an optional embodiment, the film pressing platform 41 is driven by a motor screw to move vertically on the encapsulation platform 1.
[0034] Once the graphics card is placed on the packaging position 2, the lamination assembly 4 begins to operate. The lamination stage 41 first positions the graphics card, and then the lamination sheet 42 presses down to adhere the packaging film 7 fascia to the graphics card. The recessed design of the lamination stage 41 ensures that the graphics card remains stable during the packaging process, preventing movement or misalignment. The lamination sheet 42 is used to press down the packaging film 7, encapsulating the graphics card within the film.
[0035] A support rod 35 is slidably connected to the side wall of the encapsulation platform 1 near the take-up roller 31 of the encapsulation film 7. A tension roller 34 is vertically connected to the support rod 35. The tension roller 34 is arranged parallel to the take-up roller 31 of the encapsulation film 7, and the side of the tension roller 34 abuts against the encapsulation film 7. A sliding block 36 is rotatably connected to the end of the tension roller 34. A slide rail 37 is provided on the support rod 35 in the vertical direction to slide with the slider. A limit rod 38 is threaded on the slider. The end of the limit rod 38 abuts against the side wall of the slide rail 37 and is used to limit the position of the slider. The slider cooperates with the slide rail 37 on the support rod 35, and the position of the slider is fixed by the limit rod 38, thereby fixing the height of the tension roller 34 so as to adjust the tension of the encapsulation film 7 according to the actual situation.
[0036] The support rod 35 provides stable support for the tension roller 34 and allows it to move up and down along the support rod 35. The tension roller 34 is responsible for adjusting the tension of the encapsulation film 7 to ensure that the encapsulation film 7 maintains appropriate tension during transport.
[0037] The collection component 5 is used to collect the packaged graphics cards. The collection component 5 includes a collection box 51, located below the packaging platform 1. A discharge chute 52 is located on the packaging platform 1 corresponding to the collection box 51. A telescopic cover 53 is slidably connected to the inner wall of the discharge chute 52, covering it. A telescopic rod 54 is provided on the side of the telescopic cover 53, driving it to slide. A guide channel 55 is provided at the opening of the discharge chute 52, communicating with the collection box 51.
[0038] After packaging is completed, the telescopic cover 53 opens the discharge slot 52, and the graphics card slides into the collection box 51 along the guide channel 55 to ensure that the graphics card can fall into the collection box 51 smoothly and safely. The collection box 51, as the storage container for the packaged graphics card, is located below the packaging stage 1. The telescopic cover 53 is driven by the telescopic rod 54 to cover or open the discharge slot 52 and control the flow of the graphics card. The design of the guide channel 55 ensures that the packaged graphics card can fall smoothly from the packaging stage 1 into the collection box, avoiding damage or scattering of the graphics card during the collection process.
[0039] The packaging platform 1 is also equipped with a waste recycling component 6, which is used to collect packaging waste after molding. The packaging platform 1 is equipped with a suction component 61 corresponding to the packaging position 2. The packaging position 2 is equipped with a suction groove 62 corresponding to the suction component 61. A collection box is connected to the suction component 61, which is used to collect packaging waste.
[0040] During the encapsulation process, the suction component 61 continuously operates, sucking up waste material near the encapsulation position 2 through the suction groove 62. The waste material is sucked into the suction component 61 and then sent to the collection box for storage.
[0041] The packaging stage 1 is provided with multiple packaging positions 2, and multiple film pressing components 4 are provided corresponding to the multiple packaging positions 2. As an optional embodiment, the accompanying drawings of this application only show the correspondence between one packaging position 2 and one film pressing component 4.
[0042] Multiple graphics cards can be packaged simultaneously, greatly improving production efficiency. Each packaging position 2 and its corresponding molding assembly 4 operate independently without interference. Once one packaging position 2 is completed, the next packaging position 2 can begin immediately.
[0043] The implementation principle of the packaging equipment for graphics card manufacturing and processing disclosed in this application is as follows: First, the packaging stage 1 serves as the foundation of the entire equipment, providing stable support for the packaging position 2. The packaging position 2 is responsible for accurately placing the graphics card, ensuring that the graphics card maintains the correct position during the packaging process. The film winding assembly 3 includes a take-up roller 31 and an unwind roller for the packaging film 7, which are respectively arranged on both sides of the packaging stage 1, working together to achieve the supply of the packaging film 7 and the recycling of waste film. Among them, the take-up roller 31 of the packaging film 7 is not only responsible for recycling waste film, but also plays a traction role for the packaging film 7, ensuring the stability of the packaging film 7 during the transmission process.
[0044] The pressure film assembly 4 is a key component for graphics card packaging. It includes a pressure film stage 41 and a pressure film sheet 42. The recessed design on the surface of the pressure film stage 41 positions the graphics card, preventing it from moving or shifting during the packaging process. The pressure film sheet 42 is responsible for pressing down the packaging film 7, tightly encapsulating the graphics card within the film. Furthermore, the operation of the pressure film assembly 4, in coordination with the packaging stage 1, ensures a good fit between the packaging film 7 and the graphics card, improving the packaging quality.
[0045] To adjust the tension of the encapsulation film 7, the equipment is also equipped with a tension roller 34. The tension roller 34 is connected to the sliding block 36 via a support rod 35, and its height can be adjusted according to actual conditions, thereby achieving precise control over the tension of the encapsulation film 7. This design not only enhances the stability of the encapsulation film 7 but also improves the flexibility of the encapsulation process.
[0046] After packaging, the graphics card needs to slide into the collection box 51 through the discharge chute 52. For this purpose, the device is equipped with a collection assembly 5, including the collection box 51, the discharge chute 52, a telescopic cover 53, and a guide channel 55. The telescopic cover 53, driven by a telescopic rod 54, can cover or open the discharge chute 52, thereby controlling the outflow of the graphics card. The guide channel 55 ensures that the graphics card falls smoothly and safely into the collection box 51, preventing damage or scattering during the collection process.
[0047] In addition, this technical solution also considers the issue of waste recycling. By setting up a waste recycling component 6, including a suction component 61, a suction trough 62, and a collection box, the equipment can continuously suck up and collect the waste generated during the packaging process, maintaining a clean and hygienic working environment.
[0048] It should be understood that those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.
Claims
1. A packaging device for graphics card production and processing, comprising a packaging table, a packaging position and a film winding assembly; characterized in that, The encapsulation position is located on the surface of the encapsulation platform; the film winding assembly includes an encapsulation film take-up roller and an encapsulation film unwind roller, which are respectively located on both sides of the encapsulation platform; the encapsulation film on the encapsulation film take-up roller has two layers; a film separating roller is located on the side of the encapsulation film take-up roller near the encapsulation platform, which is used to separate the two layers of encapsulation film; one layer of encapsulation film is located above the encapsulation platform, and the other layer is attached to the surface of the encapsulation platform; a film pressing assembly is located on the encapsulation platform corresponding to the encapsulation position, which is used to press down the encapsulation film to seal the graphics card.
2. The packaging equipment for producing graphics cards according to claim 1, characterized in that, The film pressing assembly includes a film pressing platform with a recessed surface and a film pressing sheet on the side of the film pressing platform. The film pressing sheet is used to press and cut the encapsulation film, and the film pressing platform is slidably connected to the encapsulation platform in the vertical direction.
3. The packaging equipment for producing graphics cards according to claim 1, characterized in that, A support rod is slidably connected to the side wall of the packaging platform near the packaging film take-up roller. A tension roller is slidably connected to the support rod. The tension roller is arranged parallel to the packaging film take-up roller, and the side of the tension roller abuts against the packaging film.
4. The packaging equipment for producing graphics cards according to claim 3, characterized in that, The end of the tensioning roller is rotatably connected to a sliding block, and the support rod is provided with a slide rail in the vertical direction to slide with the slider; the slider is threaded with a limit rod, the end of which abuts against the side wall of the slide rail and is used to limit the position of the slider.
5. The packaging equipment for producing graphics cards according to claim 1, characterized in that, The graphics card production and processing packaging equipment also includes a collection component, which is used to collect the packaged graphics cards. The collection component includes a collection box, which is located below the packaging platform. The packaging platform has a discharge chute corresponding to the collection box. A telescopic cover is slidably connected to the inner wall of the discharge chute. The telescopic cover is used to cover the discharge chute. A telescopic rod is provided on the side of the telescopic cover, which is used to drive the telescopic cover to slide.
6. The packaging equipment for producing graphics cards according to claim 5, characterized in that, A guide channel is provided at the opening of the discharge trough, and the guide channel is connected to the collection box.
7. The packaging equipment for producing graphics cards according to claim 1, characterized in that, The packaging platform is also equipped with a waste recycling component, which is used to collect packaging waste after film pressing. A suction component is provided on the packaging platform corresponding to the packaging position. A suction groove is opened on the packaging position corresponding to the suction component. A collection box is connected to the suction component, which is used to collect packaging waste.
8. The packaging equipment for producing graphics cards according to claim 1, characterized in that, The packaging platform is provided with multiple packaging positions, and multiple film pressing components are provided corresponding to the multiple packaging positions.
Citation Information
Patent Citations
Display card packaging device
CN221727092U